DEMO9S08LL16 Freescale Semiconductor, DEMO9S08LL16 Datasheet - Page 11

BOARD DEMO FOR MC9S08LL16 MCU

DEMO9S08LL16

Manufacturer Part Number
DEMO9S08LL16
Description
BOARD DEMO FOR MC9S08LL16 MCU
Manufacturer
Freescale Semiconductor
Series
HCS08r
Type
MCUr

Specifications of DEMO9S08LL16

Contents
Board, Cable, DVD
Silicon Manufacturer
Freescale
Core Architecture
HCS08
Core Sub-architecture
HCS08
Silicon Core Number
MC9S08
Silicon Family Name
S08LL
Kit Contents
Board
Rohs Compliant
Yes
For Use With/related Products
MC9S08LL16
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
DEMO9S08LL16
Manufacturer:
ALL
Quantity:
80
3.4
This section provides information about operating temperature range, power dissipation, and package
thermal resistance. Power dissipation on I/O pins is usually small compared to the power dissipation in
on-chip logic and voltage regulator circuits, and it is user-determined rather than being controlled by the
MCU design. To take P
voltage and V
pin current (heavy loads), the difference between pin voltage and V
The average chip-junction temperature (T
where:
For most applications, P
(if P
Solving
Freescale Semiconductor
I/O
T
P
P
P
JA
D
int
I/O
A
is neglected) is:
= Ambient temperature, C
= P
Equation 3-1
= Package thermal resistance, junction-to-ambient, C/W
= I
= Power dissipation on input and output pins — user determined
Thermal Characteristics
int
DD
SS
P
 V
or V
I/O
Operating temperature range
(packaged)
Maximum junction temperature
Thermal resistance
Thermal resistance
DD
Single-layer board
Four-layer board
DD
and
, Watts — chip internal power
I/O
I/O
and multiply by the pin current for each I/O pin. Except in cases of unusually high
64-pin LQFP
48-pin QFN
48-pin LQFP
64-pin LQFP
48-pin QFN
48-pin LQFP
into account in power calculations, determine the difference between actual pin
Equation 3-2
 P
Rating
K = P
int
MC9S08LL16 Series MCU Data Sheet, Rev. 6
and can be neglected. An approximate relationship between P
Table 5. Thermal Characteristics
D
P
T
 (T
D
for K gives:
J
= K  (T
J
= T
) in C can be obtained from:
A
+ 273C) + 
A
+ (P
J
D
+ 273C)
 
Symbol
T
JA
T
JM
JA
JA
JA
A
)
 (P
D
)
2
SS
–40 to 85
T
Value
L
or V
95
72
84
81
54
30
57
to T
H
DD
will be very small.
C/W
C/W
Electrical Characteristics
Unit
C
C
D
Eqn. 3-1
Eqn. 3-2
Eqn. 3-3
and T
11
J

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